通过等通道角压加工的铝基混合复合材料的磨损特性

BN Sharath, P. Madhu, Akarsh Verma
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引用次数: 0

摘要

本研究在室温下对铝 2618 和增强型铝 2618 进行了系统的磨损实验研究,研究对象为处于固溶状态的铝 2618 和经过等通道角压(ECAP)后的铝 2618,目的是获得对磨损行为的基本认识,并生成磨损特性的参考数据。作者使用 Al2618 与碳化硼(5 wt.%)和石墨(5 wt.%)通过搅拌铸造工艺制备了一种混合复合材料。经过溶液处理的 Al2618 和增强型 Al2618 圆柱形试样在室温下通过 120° 的模具进行了四次 ECAP,采用的是加工路线 (BC)。从结果的角度来看,在室温下,在每次通过 ECAP 之前和之后,对来自固溶工件的试样进行了显微硬度测量。扫描电子显微镜和 X 射线衍射技术用于微观结构研究。通过两种途径三次后,微观结构显示出带有许多位错的细长晶粒;通过四次后,微观结构显示出近乎等轴的晶粒。经过三次 ECAP 后,产生了亚微米大小的晶粒。此外,随着通过次数的增加,硬度值也呈单调增长。最后,我们报告说,经过 ECAP 工艺处理的 Al2618 和增强型 Al2618 的耐磨性得到了改善。这项研究可能会加速铝合金在工业领域的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wear behaviour of aluminium-based hybrid composites processed by equal channel angular pressing
In the present investigation, a systematic experimental wear study at room temperature on Al2618 and reinforced Al2618 in the solutionized state, and after each pass of equal channel angular pressing (ECAP) was taken up to obtain a fundamental understanding of the wear behaviour and generate reference data on wear properties. The authors prepared a hybrid composite using Al2618 with boron carbide (5 wt.%) and graphite (5 wt.%) by the stir casting process. Solution treated cylindrical specimens of Al2618 and reinforced Al2618 were subjected to four passes of ECAP through a 120° die at room temperature using the processing route (BC). From the results point of view, microhardness measurements were carried out at room temperature on the specimens from the solutionized work piece before and after each pass of ECAP. Scanning electron microscope and X-ray diffraction techniques were used to conduct the microstructural studies. After three passes through both routes, the microstructure showed elongated grains with many dislocations; and after four passes, the microstructure depicted nearly equiaxed grains. Sub micrometre sized grains were produced after three passes of ECAP. Moreover, there was a monotonic increase in the hardness values with an increase in the number of passes. Finally, we reported that there was an improvement in the wear resistance of Al2618 and reinforced Al2618 subjected to ECAP process. This scrutiny may accelerate the applications of aluminium alloys in the industrial sector.
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